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基于基因组扫描数据的系统基因组学分析揭示了栒子属(蔷薇科)的细胞-核分歧的进化历史。

Phylogenomic analyses based on genome-skimming data reveal cyto-nuclear discordance in the evolutionary history of Cotoneaster (Rosaceae).

机构信息

State Key Laboratory of Biocontrol and Guangdong Provincial Key Laboratory of Plant Resources, School of Life Sciences, Sun Yat-sen University, Guangzhou 510275, China.

Co-Innovation Center for Sustainable Forestry in Southern China, College of Biology and the Environment, Nanjing Forestry University, Nanjing 210037, China.

出版信息

Mol Phylogenet Evol. 2021 May;158:107083. doi: 10.1016/j.ympev.2021.107083. Epub 2021 Jan 28.

Abstract

As a consequence of hybridization, polyploidization, and apomixis, the genus Cotoneaster (Rosaceae) represents one of the most complicated and controversial lineages in Rosaceae, with ca. 370 species which have been classified into two subgenera and several sections, and is notorious for its taxonomic difficulty. The infrageneric relationships and taxonomy of Cotoneaster have remained poorly understood. Previous studies have focused mainly on natural hybridization involving only several species, and phylogeny based on very limited markers. In the present study, the sequences of complete chloroplast genomes and 204 low-copy nuclear genes of 72 accessions, representing 69 species as ingroups, were used to conduct the most comprehensive phylogenetic analysis so far for Cotoneaster. Based on the sequences of complete chloroplast genomes and many nuclear genes, our analyses yield two robust phylogenetic trees respectively. Chloroplast genome and nuclear data confidently resolved relationships of this genus into two major clades which largely supported current classification based on morphological evidence. However, conflicts between the chloroplast genome and low-copy nuclear phylogenies were observed in both the species level and clade level. Cyto-nuclear discordance in the phylogeny could be caused by frequent hybridization events and incomplete sorting lineage (ILS). In addition, our divergence-time analysis revealed an evolutionary radiation of the genus from late Miocene to date.

摘要

由于杂交、多倍体和无融合生殖,栒子属(蔷薇科)是蔷薇科中最复杂和最具争议的谱系之一,约有 370 种,分为两个亚属和几个节,因其分类困难而臭名昭著。属内的亲缘关系和分类仍然知之甚少。以前的研究主要集中在涉及几个物种的自然杂交上,以及基于非常有限的标记的系统发育。在本研究中,使用了 72 个样本的完整叶绿体基因组和 204 个低拷贝核基因的序列,这些样本代表了 69 个种作为内群,进行了迄今为止对栒子属最全面的系统发育分析。基于完整叶绿体基因组和许多核基因的序列,我们的分析分别产生了两个可靠的系统发育树。叶绿体基因组和核数据自信地将该属分为两个主要分支,这在很大程度上支持了基于形态证据的当前分类。然而,在种水平和分支水平上都观察到了叶绿体基因组和低拷贝核系统发育之间的冲突。系统发育中的核质不和谐可能是由频繁的杂交事件和不完全的谱系分选(ILS)引起的。此外,我们的分化时间分析显示,该属从上新世晚期至今经历了一次进化辐射。

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